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欧洲鳗鲡幼体通过直布罗陀海峡进入地中海的运输细节。

Details on the transport of European eel larvae through the Strait of Gibraltar into the Mediterranean Sea.

作者信息

Freese Marko, Marohn Lasse, Ferrer Luis, Pohlmann Jan-Dag, Wysujack Klaus, Blancke Tina, Hanel Reinhold

机构信息

Thünen Institute of Fisheries Ecology, Federal Research Institute for Rural Areas, Forestry and Fisheries, 27572, Bremerhaven, Germany.

AZTI, Marine Research, Basque Research and Technology Alliance (BRTA), Herrera Kaia, Portualdea z/g, 20110, Pasaia, Spain.

出版信息

Sci Rep. 2025 Jan 6;15(1):1006. doi: 10.1038/s41598-024-82929-z.

Abstract

Numbers of European glass eels (Anguilla anguilla) monitored along the Atlantic and Mediterranean coasts of Europe currently serve as the main stock indicator in assessment of this critically endangered species. Spawning, however, takes place exclusively in the Sargasso Sea, several thousand kilometers away. The beginning of its complex lifecycle is characterized by a distant and lengthy larval drift, before the young-of-the-year reach the monitoring stations at the European coasts. The oceanic mechanisms regulating dispersal and distribution of European eel leptocephalus larvae, before they metamorphose into glass eels and colonize future growth habitats, are still poorly understood and data are scarce. Here, we present oceanographic and leptocephalus catch data from a 24-h station on board of the German Research Vessel Meteor, covering one event cycle of the tide-derived change of hydrographic conditions in the central part of the Strait of Gibraltar. Results of this study provide detailed insights on how the exchange of water masses between the Atlantic and the Mediterranean Sea may favor or prevent transport and migration of eel larvae through the Strait, which potentially plays a decisive role in timing and magnitude of larval recruitment events into the entire Mediterranean region.

摘要

目前,沿欧洲大西洋和地中海海岸监测到的欧洲玻璃鳗鲡(欧洲鳗鲡)数量是评估这种极度濒危物种的主要种群指标。然而,其产卵仅发生在数千公里之外的马尾藻海。在当年幼体抵达欧洲海岸的监测站之前,其复杂生命周期的开始阶段具有远距离且漫长的幼体漂流特征。在欧洲鳗鲡柳叶鳗幼体变态为玻璃鳗鲡并定殖到未来生长栖息地之前,调节其扩散和分布的海洋学机制仍知之甚少且数据匮乏。在此,我们展示了德国研究船“流星号”上一个24小时监测站的海洋学和柳叶鳗捕获数据,涵盖了直布罗陀海峡中部由潮汐引起的水文条件变化的一个事件周期。这项研究的结果提供了详细的见解,即大西洋和地中海之间的水体交换如何促进或阻碍鳗鲡幼体通过海峡的运输和迁移,这可能对整个地中海地区幼体补充事件的时间和规模起着决定性作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3282/11704197/85f774133605/41598_2024_82929_Fig1_HTML.jpg

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